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May 13, 2026Processes0 citationsOpen Access

Strengthening Measures for Solid–Liquid Separation on the Surface of In Situ Leaching of Uranium

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YWYaan WangMCMingqian CaoJCJianyi Chen

Key Points

  • This research aims to improve solid-liquid separation in in situ leaching of uranium by addressing clogging issues.
  • Developed a novel hybrid separation system combining a hydro cyclone with a bag filter.
  • Characterized particle size distribution in leaching solutions focusing on clay and silt-grade particles.
  • Used fluid mechanics and CFD simulations to optimize the separation processes.
  • Achieved 99.9% efficiency for separating particles greater than 50 μm.
  • Reduced operating pressure and filter bag replacement frequency from three times to once weekly.
  • Provided insights into particle migration mechanisms affecting ore-bearing layer clogging.

Abstract

In situ leaching (ISL) of uranium faces challenges in solid–liquid separation of pregnant leaching solution, with conventional bag filters showing suboptimal performance. This study investigates wellbore and ore-bearing layer clogging in neutral ISL uranium mining, characterizing particle size distribution in the leaching solution. Results show that leaching solution particles consist mainly of clay and silt-grade debris (60 μm and 99.9% efficiency for particles >50 μm. The hybrid system significantly reduces operating pressure and filter bag replacement frequency from three times to once weekly, mitigating ore-bearing layer clogging. This research provides insights into particle migration mechanisms and offers an efficient solid–liquid separation solution for uranium mining operations.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6a0414f679e20c90b4444cb5https://doi.org/10.3390/pr14101520
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